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Captured Segment Exchange: A Strategy for Custom Engineering Large Genomic Regions in Drosophila melanogaster

机译:捕获的部分交换:定制工程果蝇大基因组区域的策略。

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摘要

Site-specific recombinases (SSRs) are valuable tools for manipulating genomes. In Drosophila, thousands of transgenic insertions carrying SSR recognition sites have been distributed throughout the genome by several large-scale projects. Here we describe a method with the potential to use these insertions to make custom alterations to the Drosophila genome in vivo. Specifically, by employing recombineering techniques and a dual recombinase-mediated cassette exchange strategy based on the phiC31 integrase and FLP recombinase, we show that a large genomic segment that lies between two SSR recognition-site insertions can be “captured” as a target cassette and exchanged for a sequence that was engineered in bacterial cells. We demonstrate this approach by targeting a 50-kb segment spanning the gene, replacing the existing segment with corresponding recombineered sequences through simple and efficient manipulations. Given the high density of SSR recognition-site insertions in Drosophila, our method affords a straightforward and highly efficient approach to explore gene function in situ for a substantial portion of the Drosophila genome.
机译:位点特异性重组酶(SSR)是操纵基因组的有价值的工具。在果蝇中,几个大型项目已在整个基因组中分布了数千个带有SSR识别位点的转基因插入物。在这里,我们描述了一种可能使用这些插入物在体内对果蝇基因组进行自定义更改的方法。具体而言,通过采用重组技术和基于phiC31整合酶和FLP重组酶的双重重组酶介导的盒交换策略,我们证明了位于两个SSR识别位点插入之间的大基因组片段可以被“捕获”为目标盒交换了在细菌细胞中工程化的序列。我们通过靶向跨越基因的50kb片段,通过简单而有效的操作,用相应的重组序列替换现有片段,来证明这种方法。考虑到果蝇中SSR识别位点插入的高密度,我们的方法提供了一种直接而高效的方法来就地研究果蝇基因组的大部分基因功能。

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